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Biomedical subjects

S McLoughlin

Publications and source records attributed to S McLoughlin.

7 recordsLinked to original sources

Bone histomorphometric and biomechanical abnormalities in mice homozygous for deletion of the dopamine transporter gene.

Dopamine (DA) has been reported to have effects on calcium and phosphorus metabolism. The dopamine transporter (DAT) is believed to control the temporal and spatial activity of released DA by rapid uptake of the neurotransmitter into presynaptic terminals. We have evaluated the histologic and biomechanical properties of the skeleton in mice homozygous for deletion of the DA transporter gene (DAT) to help delineate the role of DA in bone biology. We have demonstrated that DAT-/-mice have reduced bone mass and strength. DAT-/- animals had shorter femur length and dry weight. Ash calcium content of the femur was 32% lower in the DAT-/- mice than in the wild-type animals. Cancellous bone volume in the proximal tibial metaphysis was significantly lower in the DAT-/- animals (p < 0.04). There was a 32% reduction in trabecular thickness (p = NS). For the vertebrae, cancellous bone volume was again lower in the DAT-/- animals compared with wild-type as a consequence of increased trabecular spacing (p < 0.05) and reduced trabecular number (p < 0.05). Cortical thickness and bone area in the femoral diaphysis were reduced in the DAT-/-animals. The ultimate bending load (femoral strength) for the DAT-/- mice was 30% lower than the wild-type mice (p = 0.004). Thus, deletion of the DAT gene results in deficiencies in skeletal structure and integrity.

Animals↗

Secondary fractures of Le Fort I osteotomy.

PURPOSE: To report the ophthalmic complications of Le Fort I osteotomy for the correction of dentofacial deformities and to determine the maximal compressive loads applied during pterygomaxillary separation in a cadaver model. METHODS: Two cases of ophthalmic complications arising after Le Fort I osteotomy are reported. Le Fort I osteotomy was performed on five cadavers. The maximal compressive load applied during pterygomaxillary separation was recorded with a 10 kN (3,000 lbf) load cell of a MTS Mini-Bionix servo-hydraulic machine (MTS, Eden Prairie, MN, U.S.A.). A paired t test was used to compare forces applied to the right and left sides. Computed tomography scans of each specimen were obtained after Le Fort I osteotomy to document secondary fractures. The skulls were subsequently stained with 1% fuschin red to highlight secondary fractures. RESULTS: Maximum compressive loads during pterygomaxillary separation ranged from 22 N (5.0 lbf) to 162 N (36.5 lbf), with an average of 106 N (23.8 lbf) (SD 47.6 N [10.7 lbf]). Forces applied on the first operative side were significantly greater than forces applied on the second operative side (p = 0.0034). Secondary fractures were found in three specimens by computed tomography and in two specimens by 1% fuschin red. All secondary fractures occurred on the second operative side. CONCLUSION: Secondary fractures in the Le Fort I osteotomy procedures occurred on the side opposite the greater maximal compressive load and on the second operative side.

Adult↗

Measurement of copper, zinc and magnesium in serum and urine by DC plasma emission spectrometry.

The application of a DC plasma emission spectrometer to the measurement of copper, zinc and magnesium in serum and urine is reported. Each assay requires only a simple dilution in 1% nitric acid. Comparisons with standard atomic absorption techniques showed good analytical agreement, especially for copper and magnesium. Analysis of quality control preparations for copper and zinc gave results ranging from -1.5% to +3.6% of the stated values for five copper and four zinc experiments, with an unexplained result of +7.6% for one zinc experiment. Reference ranges were compiled for serum zinc and urinary copper which agreed closely with those established by atomic absorption and neutron activation analysis. Assays by DC plasma emission are thus precise and reproducible, and simple enough to authenticate the method for use in a clinical laboratory.

Copper↗